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Three major output pathways from the KaiABC-based oscillator cooperate to generate robust circadian kaiBC expression in cyanobacteria

机译:来自基于KaiABC的振荡器的三个主要输出途径共同在蓝细菌中生成稳定的昼夜kaiBC表达

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摘要

Circadian kaiBC expression in the cyanobacterium Synechococcus elongatus PCC 7942 is generated by temporal information transmission from the KaiABC-based circadian oscillator to RpaA, a putative transcriptional factor, via the SasA-dependent positive pathway and the LabA-dependent negative pathway which is responsible for feedback regulation of KaiC. However, the labA/sasA double mutant has a circadian kaiBC expression rhythm, suggesting that there is an additional circadian output pathway. Here we describe a third circadian output pathway, which is CikA-dependent. The cikA mutation attenuates KaiC overexpression-induced kaiBC repression and exacerbates the low-amplitude phenotype of the labA mutant, suggesting that cikA acts as a negative regulator of kaiBC expression independent of the LabA-dependent pathway. In the labA/sasA/cikA triple mutant, kaiBC promoter activity becomes almost arrhythmic, despite preservation of the circadian KaiC phosphorylation rhythm, suggesting that CikA largely accounts for the residual kaiBC expression rhythm observed in the labA/sasA double mutant. These results also strongly suggest that transcriptional regulation in the labA/sasA/cikA triple mutant is insulated from the circadian signals of the KaiABC-based oscillator. Based on these observations, we propose a model in which temporal information from the KaiABC-based circadian oscillator is transmitted to gene expression through three separate output pathways.
机译:通过基于SasA依赖的正向途径和依赖于LabA的负向途径(从反馈)将基于KaiABC的昼夜节律振荡器向临时的转录因子RpaA的时间信息传递,从而产生了蓝细菌Synechococcus elongatus PCC 7942中的昼夜kaiBC表达。 KaiC的规定。但是,labA / sasA双突变体具有昼夜节律kaiBC表达节奏,表明还有另外的昼夜节律输出途径。在这里,我们描述了第三种昼夜节律输出途径,它是CikA依赖性的。 cikA突变减弱了KaiC过表达诱导的kaiBC抑制,并加剧了labA突变体的低振幅表型,表明cikA充当kaiBC表达的负调节剂,独立于LabA依赖性途径。在labA / sasA / cikA三突变体中,尽管昼夜节律KaiC磷酸化节律得以保留,但kaiBC启动子活性几乎趋于心律失常,这表明CikA在很大程度上解释了在labA / sasA 中观察到的残留kaiBC表达节律。双突变体。这些结果也强烈表明, labA / sasA / cikA 三重突变体中的转录调控与基于KaiABC的振荡器的昼夜节律信号隔离。基于这些观察,我们提出了一个模型,在该模型中,来自基于KaiABC的昼夜节律振荡器的时间信息通过三个单独的输出途径传递至基因表达。

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